Development of Zeise's Salt Derivatives Bearing Substituted Acetylsalicylic Acid Substructures as Cytotoxic COX Inhibitors.

Alexander Weninger,Jessica Sagasser,Victoria Obermoser, Josef Egger, Susanna Wisboeck,Qianqian Qiu, Miriam Ladstaetter, Andrea Cucchiaro,Klaus Wurst,Daniel Baecker,Ronald Gust

Pharmaceutics(2023)

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摘要
Zeise's salt derivatives of the potassium trichlorido[η-((prop-2-en/but-3-en)-1-yl)-2-acetoxybenzoate]platinate(II) type (ASA-Prop-PtCl/ASA-But-PtCl derivatives) were synthesized and characterized regarding their structure, stability, and biological activity. It is proposed that the leads ASA-Prop-PtCl and ASA-But-PtCl interfere with the arachidonic acid cascade as part of their mode of action to reduce the growth of COX-1/2-expressing tumor cells. With the aim to increase the antiproliferative activity by strengthening the inhibitory potency against COX-2, F, Cl, or CH substituents were introduced into the acetylsalicylic acid (ASA) moiety. Each structural modification improved COX-2 inhibition. Especially compounds with F substituents at ASA-But-PtCl reached the maximum achievable inhibition of about 70% already at 1 µM. The PGE formation in COX-1/2-positive HT-29 cells was suppressed by all F/Cl/CH derivatives, indicating COX inhibitory potency in cellular systems. The CH-bearing complexes showed the highest cytotoxicity in COX-1/2-positive HT-29 cells with IC values of 16-27 µM. In COX-negative MCF-7 cells, they were 2-3-fold less active. These data clearly demonstrate that it is possible to increase the cytotoxicity of ASA-Prop-PtCl and ASA-But-PtCl derivatives by enhancing COX-2 inhibition.
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关键词
anticancer, antiproliferative activity, capillary electrophoresis, chlorination, COX-inhibition, cyclooxygenase enzyme, fluorination, methylation, platinum, Zeise's salt
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